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Comparison and error estimation of 3D fibre orientation analysis of computed tomography image data for fibre reinforced composites

机译:纤维增强复合材料计算机断层扫描图像数据的3D纤维取向分析的比较和误差估计

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摘要

Fibre orientation represents one of the most important micro-structural characteristics for fibre reinforced composite materials. Its influence on mechanical behaviour, material anisotropy and damage evolution has, especially with the modern trend to mass production of structural composite parts, moved back into the focus of micro-structural analysis. Following this development and the enormous improvements of X-ray computed tomography resolution and evaluation techniques in the field of composites the 3D analysis of fibre orientations throughout macroscopic components has become possible. Therefore, the complex connection between manufacturing process and manifested fibre architecture can be determined and correlated. Various image analysis methods exist in the material science and image analysis community which can be employed to extract fibre orientations of an image. In this work we compare three methods based on anisotropic Gaussian filtering, Hessian matrix calculation or structure tensor calculation in their ability to describe correct fibre orientations and their error-proneness with respect to imaging modalities and material composition. Those methods have become popular also in commercial software platforms for micro-structure analysis in user-friendly forms. All three algorithms were implemented with the open source imaging tool-kit ITK. In order to compare those methods, error estimates and testing procedures will be described herein.
机译:纤维取向是纤维增强复合材料最重要的微观结构特征之一。它对机械性能,材料各向异性和损伤演变的影响,特别是随着结构复合零件大规模生产的现代趋势,已重新回到微观结构分析的重点。随着这种发展以及复合材料领域X射线计算机断层扫描分辨率和评估技术的巨大改进,整个宏观组件中纤维取向的3D分析成为可能。因此,可以确定并关联制造过程与所显示的光纤体系结构之间的复杂联系。材料科学和图像分析社区中存在各种图像分析方法,可用于提取图像的纤维方向。在这项工作中,我们比较了三种基于各向异性高斯滤波,Hessian矩阵计算或结构张量计算的方法,它们描述了正确的纤维方向的能力以及它们在成像方式和材料组成方面的易错性。这些方法也已经在用于以用户友好形式进行微结构分析的商业软件平台中流行。所有这三种算法都是通过开源成像工具包ITK实现的。为了比较那些方法,本文将描述误差估计和测试过程。

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